Proceedings of XVIII International Conference on Topics in Astroparticle and Underground Physics — PoS(TAUP2023)最新文献

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Commissioning and the first observation of ISAI, Investigating Solar Axion by Iron-57, experiment ISAI(用铁-57 研究太阳自旋)实验的调试和首次观测
Yoshiyuki Onuki
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引用次数: 0
KM3NeT real-time analysis framework KM3NeT 实时分析框架
M. Mastrodicasa, S. Aiello, A. Albert, M. Alshamsi, S. Alves Garre, Z. Aly, A. Ambrosone, F. Ameli, M. André, E. Androutsou, M. Anguita, L. Aphecetche, M. Ardid, S. Ardid, H. Atmani, J. Aublin, L. Bailly-Salins, Z. Bardačová, B. Baret, A. Bariego-Quintana, S. Basegmez du Pree, Y. Becherini, M. Bendahman, F. Benfenati, M. Benhassi, D. B. Benoit, E. Berbee, V. Bertin, S. Biagi, M. Boettcher, D. Bonanno, J. Boumaaza, M. Bouta, M. Bouwhuis, C. Bozza, R. B. Bozza, F. Bretaudeau, R. Bruijn, J. Brunner, R. Bruno, E. Buis, R. Buompane, J. Busto, B. Caiffi, D. Calvo, S. Campion, A. Capone, F. Carenini, V. Carretero, T. Cartraud, P. Castaldi, V. Cecchini, S. Celli, L. Cerisy, M. Chabab, M. Chadolias, A. Chen, S. Cherubini, T. Chiarusi, M. Circella, R. Cocimano, J. Coelho, A. Coleiro, R. Coniglione, P. Coyle, A. Creusot, G. Cuttone, R. Dallier, Y. Darras, A. De Benedittis, B. De Martino, V. Decoene, R. Del Burgo, I. Del Rosso, U.,M. Di Cerbo, L. Di Mauro, I. Di Palma, A.,F. Díaz, C. Díaz, D. Diego-Tortosa, C. Dist
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引用次数: 0
Comparison of cross section models for neutrino-induced single pion production 中微子诱导单先驱产生的截面模型比较
Koki Yamauchi, Masaki Ishitsuka, Yoshinari Hayato
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引用次数: 0
Exploring Long-Range Interactions of L_mu-L_tau symmetry at INO-ICAL 在 INO-ICAL 探索 L_mu-L_tau 对称性的长程相互作用
Amina Khatun, S. Agarwalla
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引用次数: 0
Exploring Long-Range Interactions of L_mu-L_tau symmetry at INO-ICAL 在 INO-ICAL 探索 L_mu-L_tau 对称性的长程相互作用
Amina Khatun, S. Agarwalla
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引用次数: 0
Electromagnetic Properties of Neutrinos 中微子的电磁特性
Sudip Jana
{"title":"Electromagnetic Properties of Neutrinos","authors":"Sudip Jana","doi":"10.22323/1.441.0184","DOIUrl":"https://doi.org/10.22323/1.441.0184","url":null,"abstract":"A review of theory and phenomenology of neutrino electromagnetic properties is presented. A massive neutrino even in the easiest generalization of the Standard Model inevitably has nonzero electromagnetic characteristics, at least nonzero magnetic moment. Although its value, determined by the neutrino mass, is very small, in other BSM theories much larger values of magnetic moments are predicted. A short introduction to the derivation of the general structure of the electromagnetic interactions of Dirac and Majorana neutrinos is presented. A thorough account of electromagnetic interactions of massive neutrinos in the theoretical formulation of low-energy elastic neutrino-electron scattering is discussed on the basis of our recently published paper. The formalism of neutrino charge, magnetic, electric, and anapole form factors defined as matrices in the mass basis with account for three-neutrino mixing is presented. Then we discuss experimental constraints on neutrino magnetic and electric dipole moments, electric millicharge, charge radius and anapole moments from the terrestrial laboratory experiments. A special credit is done to bounds on neutrino electromagnetic characteristics (including magnetic and electric dipole moments, millicharge and charge radius) obtained by the reactor (MUNU, TEXONO and GEMMA) and solar Super-Kamiokande and the recent Borexino and COHERENT experiments. The effects of neutrino electromagnetic interactions in astrophysical and cosmological environments are also reviewed. The main manifestation of neutrino electromagnetic interactions, such as: 1) the radiative decay in vacuum, in matter and in a magnetic field, 2) the Cherenkov radiation, 3) the plasmon decay, 4) spin light in matter, 5) spin and spin-flavour precession, 6) neutrino pair production in a strong magnetic field, and the related processes along with their astrophysical phenomenology are also considered. The best world experimental bounds on neutrino electromagnetic properties are confronted with the predictions of theories beyond the Standard Model. It is shown that studies of neutrino electromagnetic properties provide a powerful tool to probe physics beyond the Standard Model. References: [1] C. Guinti and A. Studenikin, “Neutrino electromagnetic interactions: Awindow to new physics”, Rev. Mod. Phys. 87 (2015) 531-591. [2] A. Studenikin, “Neutrino electromagnetic properties: A window to new physics – II” , PoS (EPS-HEP2017) 137, arXiv:1801.08887. [3] A. Popov, A. Studenikin, “Neutrino oscillations and exact eigenstates in magnetic field”, accepted to Eur. Phys. J. C (2019), arXiv:1803.05755 v2, January 13, 2019. [4] A. Popov, A. Pustoshny, A. Studenikin, “Neutrino motion and spin oscillations in magnetic field and matter currents”, PoS EPS-HEP2017 (2018) 643, arXiv:1801.08911. [5] K. Kouzakov, A. Studenikin, “Electromagnetic properties ofmassive neutrinos in low-energy elastic neutrinoelectron scattering”, Phys. Rev. D 95 (2017) 055013. [6] P. Kurashvil","PeriodicalId":510430,"journal":{"name":"Proceedings of XVIII International Conference on Topics in Astroparticle and Underground Physics — PoS(TAUP2023)","volume":"6 4","pages":""},"PeriodicalIF":0.0,"publicationDate":"2024-02-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139777718","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
Background modeling and simulation of the calibration source for the CRESST dark matter search experiment CRESST 暗物质搜索实验校准源的背景建模与模拟
Samir Banik
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引用次数: 0
Electromagnetic Properties of Neutrinos 中微子的电磁特性
Sudip Jana
{"title":"Electromagnetic Properties of Neutrinos","authors":"Sudip Jana","doi":"10.22323/1.441.0184","DOIUrl":"https://doi.org/10.22323/1.441.0184","url":null,"abstract":"A review of theory and phenomenology of neutrino electromagnetic properties is presented. A massive neutrino even in the easiest generalization of the Standard Model inevitably has nonzero electromagnetic characteristics, at least nonzero magnetic moment. Although its value, determined by the neutrino mass, is very small, in other BSM theories much larger values of magnetic moments are predicted. A short introduction to the derivation of the general structure of the electromagnetic interactions of Dirac and Majorana neutrinos is presented. A thorough account of electromagnetic interactions of massive neutrinos in the theoretical formulation of low-energy elastic neutrino-electron scattering is discussed on the basis of our recently published paper. The formalism of neutrino charge, magnetic, electric, and anapole form factors defined as matrices in the mass basis with account for three-neutrino mixing is presented. Then we discuss experimental constraints on neutrino magnetic and electric dipole moments, electric millicharge, charge radius and anapole moments from the terrestrial laboratory experiments. A special credit is done to bounds on neutrino electromagnetic characteristics (including magnetic and electric dipole moments, millicharge and charge radius) obtained by the reactor (MUNU, TEXONO and GEMMA) and solar Super-Kamiokande and the recent Borexino and COHERENT experiments. The effects of neutrino electromagnetic interactions in astrophysical and cosmological environments are also reviewed. The main manifestation of neutrino electromagnetic interactions, such as: 1) the radiative decay in vacuum, in matter and in a magnetic field, 2) the Cherenkov radiation, 3) the plasmon decay, 4) spin light in matter, 5) spin and spin-flavour precession, 6) neutrino pair production in a strong magnetic field, and the related processes along with their astrophysical phenomenology are also considered. The best world experimental bounds on neutrino electromagnetic properties are confronted with the predictions of theories beyond the Standard Model. It is shown that studies of neutrino electromagnetic properties provide a powerful tool to probe physics beyond the Standard Model. References: [1] C. Guinti and A. Studenikin, “Neutrino electromagnetic interactions: Awindow to new physics”, Rev. Mod. Phys. 87 (2015) 531-591. [2] A. Studenikin, “Neutrino electromagnetic properties: A window to new physics – II” , PoS (EPS-HEP2017) 137, arXiv:1801.08887. [3] A. Popov, A. Studenikin, “Neutrino oscillations and exact eigenstates in magnetic field”, accepted to Eur. Phys. J. C (2019), arXiv:1803.05755 v2, January 13, 2019. [4] A. Popov, A. Pustoshny, A. Studenikin, “Neutrino motion and spin oscillations in magnetic field and matter currents”, PoS EPS-HEP2017 (2018) 643, arXiv:1801.08911. [5] K. Kouzakov, A. Studenikin, “Electromagnetic properties ofmassive neutrinos in low-energy elastic neutrinoelectron scattering”, Phys. Rev. D 95 (2017) 055013. [6] P. Kurashvil","PeriodicalId":510430,"journal":{"name":"Proceedings of XVIII International Conference on Topics in Astroparticle and Underground Physics — PoS(TAUP2023)","volume":"96 1","pages":""},"PeriodicalIF":0.0,"publicationDate":"2024-02-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139837403","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
Background modeling and simulation of the calibration source for the CRESST dark matter search experiment CRESST 暗物质搜索实验校准源的背景建模与模拟
Samir Banik
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引用次数: 0
Neutrino oscillations revisited and neutrinoless double beta decay 中微子振荡再探与无中微子双贝塔衰变
F. Šimkovic, Amina Khatun
{"title":"Neutrino oscillations revisited and neutrinoless double beta decay","authors":"F. Šimkovic, Amina Khatun","doi":"10.22323/1.441.0346","DOIUrl":"https://doi.org/10.22323/1.441.0346","url":null,"abstract":"","PeriodicalId":510430,"journal":{"name":"Proceedings of XVIII International Conference on Topics in Astroparticle and Underground Physics — PoS(TAUP2023)","volume":"378 4","pages":""},"PeriodicalIF":0.0,"publicationDate":"2024-02-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"139839269","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
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